Neuron
ArticleSCIP: A glial POU domain gene regulated by cyclic AMP
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ACTL6a coordinates axonal caliber recognition and myelination in the peripheral nerve
2022, iScienceCitation Excerpt :The phenotype of mice lacking Brg1 in Schwann cells shared several phenotypic similarities with Actl6a mutants such as hypomyelination, aberrant radial sorting and significant reduction in POU3F1+ cell numbers (Limpert et al., 2013; Weider et al., 2012). However, BRG1 is also part of other complexes which may activate the expression of Pou3f1 in response to NRG1-III dependent and independent signaling pathways (Leimeroth et al., 2002; Monk et al., 2009; Monuki et al., 1989), -while ACTL6a is able to remove the repressive histone marks from Pou3f1 regulatory regions, in response to axonal caliber recognition. In both cases, the reduced levels of expression of the pro-myelinating transcription factor Pou3f1, arrest the Schwann cell at an immature stage, characterized by the increased levels of Gap43, Egr1, cJun.
Neural crest diversification and specification: Transcriptional control of schwann cell differentiation
2016, The Curated Reference Collection in Neuroscience and Biobehavioral PsychologySignals regulating myelination in peripheral nerves and the Schwann cell response to injury
2013, Current Opinion in NeurobiologyCitation Excerpt :Signaling mediated by the second messenger cAMP was first implicated in the regulation of Schwann cell differentiation years ago [36,37]. The promyelinating transcription factor Oct6 is strongly induced in cultured Schwann cells in response to cAMP [38], and binding sites for the cAMP response element binding protein (CREB) are present in the Oct6 cis-regulatory Schwann cell enhancer (SCE) [39]. Genetic analysis in zebrafish identified the orphan adhesion G protein-coupled receptor (GPCR) Gpr126 as an essential regulator of myelination in the PNS and suggested that Gpr126 triggers myelination by elevating cAMP levels [40,41].
The Fundamentals of Schwann Cell Biology
2023, SpringerBriefs in Applied Sciences and TechnologyThe Role of c-Jun and Autocrine Signaling Loops in the Control of Repair Schwann Cells and Regeneration
2022, Frontiers in Cellular Neuroscience